Journal of Plant Ecology ›› 2023, Vol. 16 ›› Issue (2): 0-rtac071.DOI: 10.1093/jpe/rtac071

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贝叶斯置信网络——一款用于濒危植物种群保护计划的潜在工具

  

  • 收稿日期:2022-03-16 修回日期:2022-05-05 接受日期:2022-06-04 出版日期:2023-04-01 发布日期:2022-06-30

Bayesian belief networks: a potential tool for conservation planning of endangered plant species populations

Aneta Sienkiewicz*, Grażyna Łaska   

  1. Department of Agri-Food Engineering and Environmental Management, Białystok University of Technology, Wiejska 45A, 15-351 Białystok, Poland
  • Received:2022-03-16 Revised:2022-05-05 Accepted:2022-06-04 Online:2023-04-01 Published:2022-06-30
  • Contact: E-mail: a.sienkiewicz@pb.edu.pl

摘要: 贝叶斯置信网络(Bayesian Belief Networks, BBN)作为一款潜在的决策支持工具,在生态保育管理中获得了广泛的应用。我们评估了BBN模型在保护一种生长于欧洲的濒危植物一肾叶白头翁(Pulsatilla patens (L.) Mill.)管理中的应用。通过BBN方法建立一个模型,研究了波兰东北部生物和非生物变量对种群形态发育特征和数量统计学特征的影响。利用贝叶斯置信网络可视化软件(GeNIe 2.0),利用从4个最大的复合型森林中总计47个地点收集到的野外数据,开发了一个模型。诊断测试和敏感性分析结果表明,林下竞争物种的数量对种群特征影响最大。结果验证表明,我们所开发的模型,能对决定该类群繁殖性状的种群特征的生境条件进行有效的评估。BBN模型也可用来确定保证肾叶白头翁正常生长和发育的最佳生境条件。最后,我们提出了对相关物种的保护策略。因此,该模型可用作濒危植物物种保护规划的潜在决策支持工具。

关键词: 概率关系, 保护措施, 决策支持工具, 生境条件优化, 波兰东北部

Abstract: Bayesian belief networks (BBNs) have been increasingly used as a potential decision supporting tool useful in conservation management. We assessed the application of the BBN model to support management in conservation planning of Pulsatilla patens (L.) Mill., the endangered plant species on a European scale, as an example. The Bayesian network approach was used to develop a model of the impact of biotic and abiotic variables on the morphological-developmental features and demographic features of the population in northeast Poland. Field data collected from the total number of 47 sites in the 4 largest forest complexes were used to develop a model using GeNIe 2.0. The diagnostic testing and sensitivity analysis indicated that the greatest impact on the population features was the number of competing species in the forest undergrowth. Validation has shown that the developed model is effective for evaluation of the impact of habitat conditions on the population features deciding about the reproduction of this taxon. The BBN model was also used to define optimal habitat conditions ensuring regular growth and development of P. patens. Finally, we demonstrated the protective treatment to help preserving the species considered. Therefore, the developed model is recommended as a potential tool to support decision-making aimed at the conservation planning of endangered plant species.

Key words: probabilistic relationships, protective treatment, decision support tool, habitat conditions optimization, north-eastern Poland